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    • 1. 发明授权
    • Adjustable mass clutch weight
    • US11493100B2
    • 2022-11-08
    • US17494758
    • 2021-10-05
    • Don Simpson
    • Don Simpson
    • F16D43/06
    • An adjustable mass clutch weight for use in a CVT clutch is provided. The adjustable mass clutch weight may include an elongate body having a heel and a tip; a first protrusion having external threads extending from a first side of the elongate body at the heel. The adjustable mass clutch weight may also include a second protrusion having external threads extending from a second side of the elongate body at the heel. The adjustable mass clutch weight may also include a mounting aperture extending through the first protrusion, the elongate body and the second protrusion; and at least one mass adjustment weight with a threaded aperture extending through the at least one mass adjustment weight. The at least one mass adjustment weight may be coupled to the first threaded protrusion and/or the second threaded protrusion to adjust the mass of the adjustable mass clutch weight at the heel of the elongate body.
    • 3. 发明授权
    • Centrifugal engagement and disengagement drive systems
    • 离心式接合和分离驱动系统
    • US09157494B2
    • 2015-10-13
    • US13960961
    • 2013-08-07
    • HONEYWELL INTERNATIONAL, INC.
    • Robert K. MitchellAllan D. StevesJames Knorr
    • F16D43/06F16D43/30F16D129/04
    • F16D43/06F16D23/04F16D43/30F16D2129/043
    • A drive system may provide centrifugally driven clutch members into engagement and disengagement using weights between an interface of the clutch members. The weights maybe disposed in races between the clutch members. The weights may move centrifugally within the races pushing the clutch members apart during rotation of an input drive shaft. In some embodiments, two clutch members may provide the engagement and disengagement of the input drive shaft power to a drive output member and a third clutch member may be configured to engage the two clutch members during drive engagement. The third clutch member may be configured to disengage from the two clutch members as a failsafe during, for example, an overspeed condition or a jammed clutch interface.
    • 驱动系统可以使用离合器构件的接口之间的重物提供离心驱动的离合器构件接合和分离。 重量可以设置在离合器构件之间的座圈中。 在输入驱动轴旋转期间,重物可在离合器内离心移动,使离合器构件分开。 在一些实施例中,两个离合器构件可以提供输入驱动轴功率与驱动输出构件的接合和分离,并且第三离合器构件可构造成在驱动接合期间接合两个离合器构件。 第三离合器构件可以构造成在例如超速状态或卡住的离合器接口期间作为故障保护与两个离合器构件脱离接合。
    • 4. 发明申请
    • CENTRIFUGAL ENGAGEMENT AND DISENGAGEMENT DRIVE SYSTEMS
    • 离心牵引和离散驱动系统
    • US20150041279A1
    • 2015-02-12
    • US13960961
    • 2013-08-07
    • Honeywell International, Inc.
    • Robert K. MitchellAllan D. StevesJames Knorr
    • F16D43/06
    • F16D43/06F16D23/04F16D43/30F16D2129/043
    • A drive system may provide centrifugally driven clutch members into engagement and disengagement using weights between an interface of the clutch members. The weights maybe disposed in races between the clutch members. The weights may move centrifugally within the races pushing the clutch members apart during rotation of an input drive shaft. In some embodiments, two clutch members may provide the engagement and disengagement of the input drive shaft power to a drive output member and a third clutch member may be configured to engage the two cutch members during drive engagement. The third clutch member may be configured to disengage from the two clutch members as a failsafe during, for example, an overspeed condition or a jammed clutch interface.
    • 驱动系统可以使用离合器构件的接口之间的重物提供离心驱动的离合器构件接合和分离。 重量可以设置在离合器构件之间的座圈中。 在输入驱动轴旋转期间,重物可在离合器内离心移动,使离合器构件分开。 在一些实施例中,两个离合器构件可以提供输入驱动轴功率与驱动输出构件的接合和分离,并且第三离合器构件可构造成在驱动接合期间接合两个切割构件。 第三离合器构件可以构造成在例如超速状态或卡住的离合器接口期间作为故障保护与两个离合器构件脱离接合。
    • 6. 发明授权
    • Centrifugal friction clutch for automatic speed changing device
    • 离心式摩擦离合器,用于自动变速装置
    • US5733217A
    • 1998-03-31
    • US668933
    • 1996-06-24
    • Tetsuo NarakiEiichiro Kawahara
    • Tetsuo NarakiEiichiro Kawahara
    • F16H63/30F16D43/10F16D43/12F16H61/02F16H1/28F16D43/06F16H61/00
    • F16H61/0295F16D43/10
    • An centrifugal friction clutch for an automatic speed changing device to changeover speed change stage automatically in accordance with a change of rotational speed is provided. The centrifugal friction clutch has a tubular output shaft 2 fitted on a boss section 3 fixed to an end of an input shaft 1 rotatably through a roller bearing 4; a sun gear 5 fitted on a periphery of the output shaft 2 rotatably relative thereto; a disk section 8 of a ring gear 6 integrally fitted to the input shaft 1 at the neighborhood of the boss section 3; three or four pieces of planetary gears 7 arranged at regular intervals on the outer periphery of the sun gear 5 and meshed with the sun gear 5 and the ring gear 6; a planetary carrier 9 integrally connected with the tubular output shaft 2; shafts 10 fitted to the planetary carrier 9 and rotatably supporting the planetary gears 7 through needle bearings 11; lighter centrifugal weights 23 and heavier centrifugal weights 24 fitted in cutouts 22 alternately and having base portions 23a, 24b engaged with a ring-shaped receiving piece 20; and a taper section 21 formed on an inner surface of an outer periphery of an outer side plate section 14b.
    • 提供一种用于自动变速装置的离心式摩擦离合器,以根据转速的变化自动切换变速级。 离心式摩擦离合器具有管状输出轴2,该管状输出轴2安装在可旋转地通过滚子轴承4固定到输入轴1的端部的凸台部分3上; 安装在输出轴2的周围的太阳齿轮5,其相对于其旋转; 在凸台部3附近与输入轴1一体嵌合的齿圈6的圆盘部8; 三个或四个行星齿轮7,其规则间隔布置在太阳齿轮5的外周上并与太阳齿轮5和齿圈6啮合; 与管状输出轴2一体连接的行星架9; 轴10安装在行星齿轮架9上并通过滚针轴承11可旋转地支撑行星齿轮7; 较轻的离心重物23和较重的离心重物24交替装配在切口22中,并且具有与环形接收件20接合的基部23a,24b; 以及形成在外侧板部14b的外周的内表面上的锥形部21。
    • 7. 发明授权
    • Synchronized clutch
    • 同步离合器
    • US5333712A
    • 1994-08-02
    • US47223
    • 1993-04-14
    • Janet M. SabeeJoseph C. Terranova
    • Janet M. SabeeJoseph C. Terranova
    • F16D23/10F16D23/04F16D43/06F16D43/24
    • F16D43/06F16D23/04F16D2023/0643
    • A synchronized clutch for coupling a driven element to a drive element includes an externally activated nonpositive coupling, and a positive coupling which engages automatically when the driven element achieves a designated operational state. The nonpositive coupling, preferably comprising at least one friction element permitting some slippage between the drive and driven elements, accelerates the driven element to a velocity which at least approaches synchronization of the drive and driven elements. The positive coupling preferably comprises a sliding drive ring which is responsive to centrifugal weights to positively couple the drive and driven elements at a designated velocity. The external forces actuating the nonpositive coupling are preferably applied manually through a lever. Provision is preferably made for the automatic disengagement of the clutch when the velocity of the driven element decreases below a designated velocity.
    • 用于将从动元件联接到驱动元件的同步离合器包括外部激活的非正向联轴器和当从动元件达到指定操作状态时自动接合的正联接器。 优选地包括允许驱动元件和被驱动元件之间的一些滑动的至少一个摩擦元件的非正向联轴器将被驱动元件加速至至少接近驱动元件和被驱动元件的同步的速度。 正联接器优选地包括滑动驱动环,其响应于离心重物以以指定的速度将驱动元件和被驱动元件积极地联接。 驱动非正极耦合的外力优选通过杠杆手动施加。 优选地,当从动元件的速度降低到低于指定速度时,优选地进行离合器的自动分离。
    • 9. 发明授权
    • Starting device for an engine
    • 起动发动机的装置
    • US4346615A
    • 1982-08-31
    • US135854
    • 1980-03-28
    • Tadao YonedaMichinori Tsunoda
    • Tadao YonedaMichinori Tsunoda
    • F02N15/02F02N15/06F16D43/06
    • F02N15/06Y10T74/131Y10T74/132Y10T74/137
    • A starting device for an engine wherein a drive shaft associated with a starting motor is connected through a one-way clutch to a pinion gear for driving a ring gear of the engine. The device comprises a first sleeve slidably fitted on the drive shaft, a second sleeve slidably fitted on the first sleeve, a drive clutch member for the one-way clutch slidably fitted on the second sleeve, and a buffer spring between the first sleeve and the one-way clutch. The first helical spline between the drive shaft and the first sleeve imparts a great forward thrust to the pinion gear by utilization of the turning force of the drive shaft into complete engagement with the ring gear so as to positively drive the latter. An excessive load may be absorbed by compressive deformation of the buffer spring.
    • 一种用于发动机的启动装置,其中与启动马达相关联的驱动轴通过单向离合器连接到用于驱动发动机的齿圈的小齿轮。 该装置包括可滑动地装配在驱动轴上的第一套筒,可滑动地装配在第一套筒上的第二套筒,用于可滑动地装配在第二套筒上的单向离合器的驱动离合器构件,以及位于第一套筒和第二套筒之间的缓冲弹簧 单向离合器 驱动轴和第一套之间的第一螺旋花键通过利用驱动轴的转动力与环形齿轮完全接合而向小齿轮施加大的向前推力,以便积极地驱动该齿轮。 缓冲弹簧的压缩变形可能会吸收过大的负荷。